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瘦素缺乏会导致大鼠2型糖尿病性周围神经病变中的神经变性,并通过诱导雪旺细胞凋亡和脱髓鞘来损害轴突再髓鞘化。

Leptin deficiency leads to nerve degeneration and impairs axon remyelination by inducing Schwann cell apoptosis and demyelination in type 2 diabetic peripheral neuropathy in rats.

作者信息

Hsueh Yuan-Shuo, Chen Szu-Han, Tseng Wan-Ling, Lin Sheng-Che, Chen De-Quan, Huang Chih-Chung, Hsueh Yuan-Yu

机构信息

Department of Physiology, School of Post Baccalaureate Medicine, College of Medicine, Kaohsiung Medical University, Kaohsiung, 807, Taiwan; Department of Medical Research, Kaohsiung Medical University Hospital, Kaohsiung Medical University, Kaohsiung, 807, Taiwan; Center for Cancer Research, Kaohsiung Medical University, Kaohsiung, Taiwan.

Division of Plastic and Reconstructive Surgery, Department of Surgery, National Cheng Kung University Hospital, College of Medicine, National Cheng Kung University, Tainan, 701, Taiwan.

出版信息

Neurochem Int. 2025 Jan;182:105908. doi: 10.1016/j.neuint.2024.105908. Epub 2024 Nov 26.

Abstract

Diabetic peripheral neuropathy, characterized by symptoms such as paresthesia, neuropathic pain, and potential lower limb amputation, poses significant clinical management challenges. Recent studies suggest that chronic hyperglycemia-induced Schwann cells (SCs) apoptosis contributes to neurodegeneration and impaired nerve regeneration, but the detailed mechanisms are still unknown. Our study investigated a mixed-sex type 2 diabetes mellitus (T2DM) rat model using leptin knockout (KO) to simulate obesity and diabetes-related conditions. Through extensive assessments, including mechanical allodynia, electrophysiology, and microcirculation analyses, along with myelin degradation studies in KO versus wild-type rats, we focused on apoptosis, autophagy, and SCs dedifferentiation in the sciatic nerve and examined nerve regeneration in KO rats. KO rats exhibited notable reductions in mechanical withdrawal force, prolonged latency, decreased compound muscle action potential (CMAP) amplitude, reduced microcirculation, myelin sheath damage, and increases in apoptosis, autophagy, and SCs dedifferentiation. Moreover, leptin KO was found to impair peripheral nerve regeneration postinjury, as indicated by reduced muscle weight, lower CMAP amplitude, extended latency, and decreased remyelination and SCs density. These findings underscore the effectiveness of the T2DM rat model in clarifying the impact of leptin KO on SCs apoptosis, dedifferentiation, and demyelination, providing valuable insights into new therapeutic avenues for treating T2DM-induced peripheral neuropathy.

摘要

糖尿病周围神经病变以感觉异常、神经性疼痛以及潜在的下肢截肢等症状为特征,给临床管理带来了重大挑战。最近的研究表明,慢性高血糖诱导的雪旺细胞(SCs)凋亡会导致神经退行性变和神经再生受损,但其详细机制仍不清楚。我们的研究使用瘦素基因敲除(KO)的方法建立了一种混合性别的2型糖尿病(T2DM)大鼠模型,以模拟肥胖和糖尿病相关情况。通过广泛的评估,包括机械性异常疼痛、电生理学和微循环分析,以及对基因敲除大鼠与野生型大鼠的髓鞘降解研究,我们聚焦于坐骨神经中的细胞凋亡、自噬和雪旺细胞去分化,并检查了基因敲除大鼠的神经再生情况。基因敲除大鼠表现出机械性退缩力显著降低、潜伏期延长、复合肌肉动作电位(CMAP)幅度减小、微循环减少、髓鞘损伤,以及细胞凋亡、自噬和雪旺细胞去分化增加。此外,发现瘦素基因敲除会损害损伤后周围神经的再生,表现为肌肉重量减轻、CMAP幅度降低、潜伏期延长、髓鞘再生减少和雪旺细胞密度降低。这些发现强调了T2DM大鼠模型在阐明瘦素基因敲除对雪旺细胞凋亡、去分化和脱髓鞘影响方面的有效性,为治疗T2DM诱导的周围神经病变的新治疗途径提供了有价值的见解。

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